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Modeling and analysis of reactive power in grid-connected onshore and offshore DFIG-based wind farms

机译:并网的陆上和海上基于DFIG的风电场的无功建模与分析

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摘要

The analysis of reactive power for offshore and onshore wind farms connected to the grid through high-voltage alternating-current transmission systems is considered in this paper. The considered wind farm is made up with doubly fed induction generators (DFIGs). Modeling and improved analysis of the effective reactive power capability of DFIGs are provided. Particularly, the optimal power-tracking constraints and other operational variables are considered in the modeling and analysis of the DFIG reactive power capability. Reactive power requirements for both overhead and cable transmission systems are modeled and compared with each other as well as with the reactive power capability of the wind farms. Possibility of unity power factor operation suggested by the German Electricity Association (VDEW) is investigated for both types of installations. Aggregate reactive power demands on both wind farms are assessed such that the bus voltages remain within an acceptable bandwidth considering various operational limits. The reactive power settings for both types of wind farm installations are determined. In addition, the minimum capacity and reactive power settings for reactive power compensation required for cable-based installations are determined. Several numerical examples are given to illustrate the reactive power characteristics and capability of DFIGs, performance of transmission lines and reactive power analysis for DFIG-based grid-connected wind farms. A summary of the main outcomes of the work presented in this paper is provided in the conclusions section.
机译:本文考虑了通过高压交流输电系统并网的海上和陆上风电场的无功功率分析。所考虑的风电场由双馈感应发电机(DFIG)组成。提供了DFIG有效无功功率能力的建模和改进分析。特别是,在DFIG无功功率能力的建模和分析中考虑了最佳功率跟踪约束和其他操作变量。对架空和电缆传输系统的无功功率需求进行建模,并与风电场的无功功率能力相互比较。对于这两种类型的设备,都对德国电力协会(VDEW)建议的单位功率因数操作的可能性进行了研究。对两个风电场的总无功功率需求进行评估,以便考虑各种运行限制,母线电压保持在可接受的带宽内。确定两种类型的风电场安装的无功功率设置。此外,还确定了基于电缆的安装所需的无功功率补偿的最小容量和无功功率设置。给出了几个数值示例来说明DFIG的无功功率特性和能力,输电线路的性能以及基于DFIG的并网风电场的无功功率分析。结论部分提供了本文介绍的主要工作成果的摘要。

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